The authors introduce an analytical approach for quantitative analysis of 3D atom dynamics during electron microscopy. They image a Co-Mo-S nanocrystal with 1.5 Å resolution, and observe chemical transformations caused by beam-stimulated vibrations
Measuring the three-dimensional (3D) distribution of chemistry in nanoscale matter is a longstanding...
International audienceCrystallography of nanocrystalline materials has witnessed a true revolution i...
Crystallography of nanocrystalline materials has witnessed a true revolution in the past 10 years, t...
Advances in electron microscopy have enabled visualizations of the three-dimensional (3D) atom arran...
This article summarizes core aspects of beam-sample interactions in research that aims at exploiting...
Understanding structural details of colloidal nanoparticles is required to bridge our knowledge abou...
Despite decades of research, the ultimate goal of nanotechnology—top-down manipulation of individual...
We present a method to produce graphene and few layer graphene sheets using solution phase chemistry...
We present a method to produce graphene and few layer graphene sheets using solution phase chemistry...
Understanding light–matter interactions in nanomaterials is crucial for optoelectronic, photonic, an...
The advancement of techniques that can probe the behaviour of individual nanoscopic objects is of pa...
The 3D atomic arrangements of materials determine the free energy landscape, thus governing the phys...
The development of new nanocrystals with outstanding physico-chemical properties requires a full thr...
Nanocrystallography has transformed our ability to interrogate the atomic structures of proteins, pe...
We use ultrafast electron microscopy (UEM) to visualize the spin-crossover dynamics of single, isola...
Measuring the three-dimensional (3D) distribution of chemistry in nanoscale matter is a longstanding...
International audienceCrystallography of nanocrystalline materials has witnessed a true revolution i...
Crystallography of nanocrystalline materials has witnessed a true revolution in the past 10 years, t...
Advances in electron microscopy have enabled visualizations of the three-dimensional (3D) atom arran...
This article summarizes core aspects of beam-sample interactions in research that aims at exploiting...
Understanding structural details of colloidal nanoparticles is required to bridge our knowledge abou...
Despite decades of research, the ultimate goal of nanotechnology—top-down manipulation of individual...
We present a method to produce graphene and few layer graphene sheets using solution phase chemistry...
We present a method to produce graphene and few layer graphene sheets using solution phase chemistry...
Understanding light–matter interactions in nanomaterials is crucial for optoelectronic, photonic, an...
The advancement of techniques that can probe the behaviour of individual nanoscopic objects is of pa...
The 3D atomic arrangements of materials determine the free energy landscape, thus governing the phys...
The development of new nanocrystals with outstanding physico-chemical properties requires a full thr...
Nanocrystallography has transformed our ability to interrogate the atomic structures of proteins, pe...
We use ultrafast electron microscopy (UEM) to visualize the spin-crossover dynamics of single, isola...
Measuring the three-dimensional (3D) distribution of chemistry in nanoscale matter is a longstanding...
International audienceCrystallography of nanocrystalline materials has witnessed a true revolution i...
Crystallography of nanocrystalline materials has witnessed a true revolution in the past 10 years, t...